Doped organic semiconductors typically exhibit a thermal activation of their electrical conductivity, whose physical origin is still under scientific debate. In this study, we disclose relationships between molecular parameters and the thermal activation energy (EA) of the conductivity, revealing that charge transport is controlled by the properties of host–dopant integer charge transfer complexes (ICTCs) in efficiently doped organic semiconductors. At low doping concentrations, charge transport is limited by the Coulomb binding energy of ICTCs, which can be minimized by systematic modification of the charge distribution on the individual ions. The investigation of a wide variety of material systems reveals that static energetic disorder in...
Doped organic semiconductors are critical to emerging device applications, including thermoelectrics...
Using Monte Carlo simulations, we revisited charge transport in degenerate disordered organic semico...
The impact of the energetic disorder and the charge localization on the conductivity, mobility and c...
Improvement of the performance of organic disordered semiconductors (OSC) is driven by the understan...
We report an unusual transition in the conductivity of an organic semiconductor upon doping: For low...
Conductivity doping of organic semiconductors is an essential prerequisite for many organic devices,...
Ionizing chemical dopants are widely used in organic semiconductors to enhance the charge transport ...
International audienceThe control over material properties attainable through molecular doping is es...
The mechanism by which molecular dopants donate free charge carriers to the host organic semiconduct...
Organic semiconductors (OSCs) have incredible prospects for next-generation, flexible electronic dev...
Electronic devices made of organic molecules are starting to show their transfomative power in vario...
Organic semiconductors are excellent candidates for low temperature thermoelectric generators. Howev...
High electrical conductivity is a prerequisite for improving the performance of organic semiconducto...
Charge transport plays a key role in defining the performance of organic-based devices such as light...
Organic materials are well-suited to certain applications due to their low cost, low weight, and mec...
Doped organic semiconductors are critical to emerging device applications, including thermoelectrics...
Using Monte Carlo simulations, we revisited charge transport in degenerate disordered organic semico...
The impact of the energetic disorder and the charge localization on the conductivity, mobility and c...
Improvement of the performance of organic disordered semiconductors (OSC) is driven by the understan...
We report an unusual transition in the conductivity of an organic semiconductor upon doping: For low...
Conductivity doping of organic semiconductors is an essential prerequisite for many organic devices,...
Ionizing chemical dopants are widely used in organic semiconductors to enhance the charge transport ...
International audienceThe control over material properties attainable through molecular doping is es...
The mechanism by which molecular dopants donate free charge carriers to the host organic semiconduct...
Organic semiconductors (OSCs) have incredible prospects for next-generation, flexible electronic dev...
Electronic devices made of organic molecules are starting to show their transfomative power in vario...
Organic semiconductors are excellent candidates for low temperature thermoelectric generators. Howev...
High electrical conductivity is a prerequisite for improving the performance of organic semiconducto...
Charge transport plays a key role in defining the performance of organic-based devices such as light...
Organic materials are well-suited to certain applications due to their low cost, low weight, and mec...
Doped organic semiconductors are critical to emerging device applications, including thermoelectrics...
Using Monte Carlo simulations, we revisited charge transport in degenerate disordered organic semico...
The impact of the energetic disorder and the charge localization on the conductivity, mobility and c...